Cargando…

Ultra-Performance Liquid Chromatography-Ion Mobility Separation-Quadruple Time-of-Flight MS (UHPLC-IMS-QTOF MS) Metabolomics for Short-Term Biomarker Discovery of Orange Intake: A Randomized, Controlled Crossover Study

A major problem with dietary assessments is their subjective nature. Untargeted metabolomics and new technologies can shed light on this issue and provide a more complete picture of dietary intake by measuring the profile of metabolites in biological samples. Oranges are one of the most consumed fru...

Descripción completa

Detalles Bibliográficos
Autores principales: Lacalle-Bergeron, Leticia, Portolés, Tania, López, Francisco J., Sancho, Juan Vicente, Ortega-Azorín, Carolina, Asensio, Eva M., Coltell, Oscar, Corella, Dolores
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7400617/
https://www.ncbi.nlm.nih.gov/pubmed/32610451
http://dx.doi.org/10.3390/nu12071916
_version_ 1783566404849500160
author Lacalle-Bergeron, Leticia
Portolés, Tania
López, Francisco J.
Sancho, Juan Vicente
Ortega-Azorín, Carolina
Asensio, Eva M.
Coltell, Oscar
Corella, Dolores
author_facet Lacalle-Bergeron, Leticia
Portolés, Tania
López, Francisco J.
Sancho, Juan Vicente
Ortega-Azorín, Carolina
Asensio, Eva M.
Coltell, Oscar
Corella, Dolores
author_sort Lacalle-Bergeron, Leticia
collection PubMed
description A major problem with dietary assessments is their subjective nature. Untargeted metabolomics and new technologies can shed light on this issue and provide a more complete picture of dietary intake by measuring the profile of metabolites in biological samples. Oranges are one of the most consumed fruits in the world, and therefore one of the most studied for their properties. The aim of this work was the application of untargeted metabolomics approach with the novel combination of ion mobility separation coupled to high resolution mass spectrometry (IMS-HRMS) and study the advantages that this technique can bring to the area of dietary biomarker discovery, with the specific case of biomarkers associated with orange consumption (Citrus reticulata) in plasma samples taken during an acute intervention study (consisting of a randomized, controlled crossover trial in healthy individuals). A total of six markers of acute orange consumption, including betonicines and conjugated flavonoids, were identified with the experimental data and previous literature, demonstrating the advantages of ion mobility in the identification of dietary biomarkers and the benefits that an additional structural descriptor, as the collision cross section value (CCS), can provide in this area.
format Online
Article
Text
id pubmed-7400617
institution National Center for Biotechnology Information
language English
publishDate 2020
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-74006172020-08-07 Ultra-Performance Liquid Chromatography-Ion Mobility Separation-Quadruple Time-of-Flight MS (UHPLC-IMS-QTOF MS) Metabolomics for Short-Term Biomarker Discovery of Orange Intake: A Randomized, Controlled Crossover Study Lacalle-Bergeron, Leticia Portolés, Tania López, Francisco J. Sancho, Juan Vicente Ortega-Azorín, Carolina Asensio, Eva M. Coltell, Oscar Corella, Dolores Nutrients Article A major problem with dietary assessments is their subjective nature. Untargeted metabolomics and new technologies can shed light on this issue and provide a more complete picture of dietary intake by measuring the profile of metabolites in biological samples. Oranges are one of the most consumed fruits in the world, and therefore one of the most studied for their properties. The aim of this work was the application of untargeted metabolomics approach with the novel combination of ion mobility separation coupled to high resolution mass spectrometry (IMS-HRMS) and study the advantages that this technique can bring to the area of dietary biomarker discovery, with the specific case of biomarkers associated with orange consumption (Citrus reticulata) in plasma samples taken during an acute intervention study (consisting of a randomized, controlled crossover trial in healthy individuals). A total of six markers of acute orange consumption, including betonicines and conjugated flavonoids, were identified with the experimental data and previous literature, demonstrating the advantages of ion mobility in the identification of dietary biomarkers and the benefits that an additional structural descriptor, as the collision cross section value (CCS), can provide in this area. MDPI 2020-06-29 /pmc/articles/PMC7400617/ /pubmed/32610451 http://dx.doi.org/10.3390/nu12071916 Text en © 2020 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Lacalle-Bergeron, Leticia
Portolés, Tania
López, Francisco J.
Sancho, Juan Vicente
Ortega-Azorín, Carolina
Asensio, Eva M.
Coltell, Oscar
Corella, Dolores
Ultra-Performance Liquid Chromatography-Ion Mobility Separation-Quadruple Time-of-Flight MS (UHPLC-IMS-QTOF MS) Metabolomics for Short-Term Biomarker Discovery of Orange Intake: A Randomized, Controlled Crossover Study
title Ultra-Performance Liquid Chromatography-Ion Mobility Separation-Quadruple Time-of-Flight MS (UHPLC-IMS-QTOF MS) Metabolomics for Short-Term Biomarker Discovery of Orange Intake: A Randomized, Controlled Crossover Study
title_full Ultra-Performance Liquid Chromatography-Ion Mobility Separation-Quadruple Time-of-Flight MS (UHPLC-IMS-QTOF MS) Metabolomics for Short-Term Biomarker Discovery of Orange Intake: A Randomized, Controlled Crossover Study
title_fullStr Ultra-Performance Liquid Chromatography-Ion Mobility Separation-Quadruple Time-of-Flight MS (UHPLC-IMS-QTOF MS) Metabolomics for Short-Term Biomarker Discovery of Orange Intake: A Randomized, Controlled Crossover Study
title_full_unstemmed Ultra-Performance Liquid Chromatography-Ion Mobility Separation-Quadruple Time-of-Flight MS (UHPLC-IMS-QTOF MS) Metabolomics for Short-Term Biomarker Discovery of Orange Intake: A Randomized, Controlled Crossover Study
title_short Ultra-Performance Liquid Chromatography-Ion Mobility Separation-Quadruple Time-of-Flight MS (UHPLC-IMS-QTOF MS) Metabolomics for Short-Term Biomarker Discovery of Orange Intake: A Randomized, Controlled Crossover Study
title_sort ultra-performance liquid chromatography-ion mobility separation-quadruple time-of-flight ms (uhplc-ims-qtof ms) metabolomics for short-term biomarker discovery of orange intake: a randomized, controlled crossover study
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7400617/
https://www.ncbi.nlm.nih.gov/pubmed/32610451
http://dx.doi.org/10.3390/nu12071916
work_keys_str_mv AT lacallebergeronleticia ultraperformanceliquidchromatographyionmobilityseparationquadrupletimeofflightmsuhplcimsqtofmsmetabolomicsforshorttermbiomarkerdiscoveryoforangeintakearandomizedcontrolledcrossoverstudy
AT portolestania ultraperformanceliquidchromatographyionmobilityseparationquadrupletimeofflightmsuhplcimsqtofmsmetabolomicsforshorttermbiomarkerdiscoveryoforangeintakearandomizedcontrolledcrossoverstudy
AT lopezfranciscoj ultraperformanceliquidchromatographyionmobilityseparationquadrupletimeofflightmsuhplcimsqtofmsmetabolomicsforshorttermbiomarkerdiscoveryoforangeintakearandomizedcontrolledcrossoverstudy
AT sanchojuanvicente ultraperformanceliquidchromatographyionmobilityseparationquadrupletimeofflightmsuhplcimsqtofmsmetabolomicsforshorttermbiomarkerdiscoveryoforangeintakearandomizedcontrolledcrossoverstudy
AT ortegaazorincarolina ultraperformanceliquidchromatographyionmobilityseparationquadrupletimeofflightmsuhplcimsqtofmsmetabolomicsforshorttermbiomarkerdiscoveryoforangeintakearandomizedcontrolledcrossoverstudy
AT asensioevam ultraperformanceliquidchromatographyionmobilityseparationquadrupletimeofflightmsuhplcimsqtofmsmetabolomicsforshorttermbiomarkerdiscoveryoforangeintakearandomizedcontrolledcrossoverstudy
AT coltelloscar ultraperformanceliquidchromatographyionmobilityseparationquadrupletimeofflightmsuhplcimsqtofmsmetabolomicsforshorttermbiomarkerdiscoveryoforangeintakearandomizedcontrolledcrossoverstudy
AT corelladolores ultraperformanceliquidchromatographyionmobilityseparationquadrupletimeofflightmsuhplcimsqtofmsmetabolomicsforshorttermbiomarkerdiscoveryoforangeintakearandomizedcontrolledcrossoverstudy